Center for Photonics and 2D Materials, Moscow Institute of Physics and Technology, Institutsky Lane 9, Dolgoprudny, 141701, Moscow Region, Russia.
Institute of Physics AS CR, Praha 8, Czech Republic.
Phys Chem Chem Phys. 2023 Apr 26;25(16):11601-11612. doi: 10.1039/d3cp00975k.
Eumelanin, the human skin pigment, is a poly-indolequinone material possessing a unique combination of physical and chemical properties. For numerous applications, the conductivity of eumelanin is of paramount importance. However, its hydration dependent conductivity is not well studied using transport-relaxation methods. Furthermore, there is no such work taking into account the simultaneous control of humidity as well as metal ion concentration. Here we present the first such study of the transport and relaxation characteristics of synthetic eumelanin doped with various Cu ion concentrations while controlling the humidity with a frequency range of 10 Hz-1 MHz. We found that Cu ions do not cause the appearance of additional relaxation processes, but partially slow down those present in neat eumelanin. In addition, considering previously published work, the key relaxation process observed in doped and undoped materials is associated with the moisture-induced synthesis of uncharged semiquinones and a corresponding increase in the overall aromaticity of the material.
真黑素是人体皮肤中的色素,是一种具有独特物理和化学性质的多吲哚醌材料。对于许多应用来说,真黑素的导电性至关重要。然而,其水合依赖性导电性尚未通过输运-弛豫方法得到很好的研究。此外,没有这样的工作同时考虑湿度以及金属离子浓度的控制。在这里,我们首次研究了在控制湿度的同时,用不同浓度的 Cu 离子掺杂合成真黑素的输运和弛豫特性,频率范围为 10 Hz-1 MHz。我们发现,Cu 离子不会导致额外弛豫过程的出现,而是部分减缓了纯真黑素中存在的弛豫过程。此外,考虑到之前发表的工作,在掺杂和未掺杂材料中观察到的关键弛豫过程与水分诱导的中性半醌的合成以及材料整体芳香度的相应增加有关。